Key Laboratory of Aquaculture in South China Sea for Aquatic Economic Animal of Guangdong Higher Education Institutes, Fisheries College, Guangdong Ocean University, Zhanjiang, China.
Cell Stress Chaperones. 2018 Nov;23(6):1329-1335. doi: 10.1007/s12192-018-0907-0. Epub 2018 Jun 7.
Optimal temperature and light are both necessary conditions for coral survival. Light enhances calcification, and thermal stress disrupts Ca homeostasis. As calcium is involved in many important metabolic activities, in this study, we cloned the calmodulin-like protein (CaLP) gene of one of the scleractinian corals, Galaxea astreata. We also detected the relative mRNA expression levels of gaCaLP using the calcium channel blocker verapamil and CaCl treatment under conditions of light and dark, and compared expression levels under controlled temperature conditions. Full-length gaCaLP cDNA comprised 1290 nucleotides and contained 498 bp open reading frame that encoded a protein with 165 amino acids. With CaCl, expression levels of gaCaLP only increased in the presence of light, suggesting that light may be a restrictive factor in CaLP expression when sufficient calcium is available in the environment. In addition, after verapami treatment, we noted that a down regulation of gaCaLP, suggesting that the expression of CaLP is closely related to extracellular Ca influx. Under temperature stress at both high (30 °C) and low (20 °C) temperatures, expression levels of gaCaLP showed an initial increase, followed by a decreasing trend as treatment progressed. Expression levels reached their maximum value at 24 h. This result showed that CaLP participated in a temperature stress response, and Ca homeostasis was disrupted during stress. The findings of the present study will help determine the function and regulatory mechanisms of gaCaLP.
最佳温度和光照都是珊瑚生存的必要条件。光照增强钙化作用,热应激破坏钙平衡。由于钙参与许多重要的代谢活动,本研究克隆了一种石珊瑚(Galaxea astreata)的钙调蛋白样蛋白(CaLP)基因。我们还检测了在光照和黑暗条件下用钙通道阻滞剂维拉帕米和 CaCl 处理时 gaCaLP 的相对 mRNA 表达水平,并比较了在控温条件下的表达水平。gaCaLP cDNA 全长 1290 个核苷酸,包含 498bp 开放阅读框,编码 165 个氨基酸的蛋白质。用 CaCl 处理时,gaCaLP 的表达水平仅在光照下增加,表明在环境中存在足够的钙时,光照可能是 CaLP 表达的限制因素。此外,维拉帕米处理后,我们发现 gaCaLP 的表达下调,表明 CaLP 的表达与细胞外 Ca 流入密切相关。在高温(30°C)和低温(20°C)胁迫下,gaCaLP 的表达水平先升高后降低,在 24 h 时达到最大值。这一结果表明 CaLP 参与了温度胁迫反应,胁迫期间钙稳态被破坏。本研究的结果将有助于确定 gaCaLP 的功能和调节机制。